Wall-mounted storage system
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-01
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本实用新型提供了一种壁挂式置物收纳系统,用于解决现有技术中壁挂式置物收纳系统的拆装效率低下的问题
[0031] When the wall-mounted storage system needs to be disassembled, simply remove the storage component from the outermost support column, then remove the outermost support column from the wall, then push the back panel directly out of the limiting space, and then disassemble the limiting component, support component and another support column in sequence, thereby improving the disassembly efficiency of the wall-mounted storage system.
Smart Images

Figure CN224612193U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture technology, and in particular to a wall-mounted storage system. Background Technology
[0002] Current wall-mounted storage systems in residential spaces utilize vertical space through the load-bearing structure of the wall, typically connecting storage components such as wardrobes and shelves using wall-mounted structures. Compared to traditional storage systems, they offer advantages such as saving floor space, making them particularly suitable for small apartment renovations.
[0003] However, to improve the flexibility and portability of wall-mounted storage systems, existing manufacturers typically detachably connect the wall-mounting structure to the storage components, then lock the back panel to the wall using expansion bolts or chemical anchors, or weld or bolt the back panel to the wall-mounting structure to ensure the stability of the back panel and the overall system. But this requires disassembling and reassembling the back panel individually, necessitating the removal and installation of each bolt between the back panel and the wall or wall-mounting structure, resulting in low disassembly efficiency.
[0004] Therefore, how to provide a wall-mounted storage system that can improve disassembly efficiency is a technical problem that urgently needs to be solved. Utility Model Content
[0005] This invention provides a wall-mounted storage system to solve the problem of low assembly and disassembly efficiency in existing wall-mounted storage systems.
[0006] The technical solution of this utility model is a wall-mounted storage system, comprising:
[0007] Multiple support columns are installed on the wall, and each support column has symmetrically opened mounting grooves extending axially on both sides along the first direction; at least one storage component is detachably connected to the front of the support column facing away from the wall along the axial direction.
[0008] The bottom of any two adjacent support columns is detachably connected to a support member, and the top of any two adjacent support columns is detachably connected to a limiting member.
[0009] The mounting grooves, the support members, and the limiting members arranged opposite to each other between any two adjacent support columns form a limiting space, which is used to place the back plate and to constrain the back plate in three directions.
[0010] Furthermore, the support member includes a vertically arranged first base plate, and both sides of the first base plate extend horizontally outward in the same direction to form a first extension plate and a second extension plate. The vertical height of the second extension plate is lower than that of the first extension plate, and the horizontal extension length of the first extension plate is less than that of the second extension plate.
[0011] Each of the support columns has a first snap-fit groove at its lower part. The first extension plate is fitted into the first snap-fit groove by an interference fit, so that the vertical height of the second extension plate is equal to or lower than the bottom of the support column. The second extension plate is used to support the bottom of the back plate to form a support.
[0012] Furthermore, a first limiting plate is vertically provided on the side of the second extension plate away from the first substrate, and the extension direction of the first limiting plate is the same as the extension direction of the first substrate.
[0013] The first substrate, the first extension plate, the second extension plate, and the first limiting plate form a first accommodating space, such that the bottom of the back plate is completely accommodated within the first accommodating space.
[0014] Furthermore, the limiting member includes a right-angle structure formed by the vertical connection of the second substrate and the third substrate;
[0015] The second substrate, which is vertically arranged, has a snap-fit plate on the side away from the third substrate that is inclined toward the third substrate;
[0016] Each of the support columns has a second snap-fit groove at its upper part, and the snap-fit plate is fitted into the second snap-fit groove by interference fit, so that the top of the support column is accommodated on the third base plate.
[0017] Furthermore, a second limiting plate is vertically provided on the side of the third substrate away from the second substrate, and the extending direction of the second limiting plate is the same as the extending direction of the second substrate.
[0018] The second substrate, the third substrate, and the second limiting plate form a second accommodating space, such that the top of the support column is completely accommodated within the second accommodating space.
[0019] Furthermore, the mounting groove is an inwardly inclined slotted structure;
[0020] When the back plate is placed into the limiting space and forms a three-phase constraint, a first gap is formed between the back plate and the wall. At least one first horizontal bar extending horizontally along a first direction is vertically provided in the first gap. The first horizontal bar completely fills the space of the first gap extending along a second direction to support the back plate.
[0021] Furthermore, the mounting groove is a slotted structure with a right-angled cross-section;
[0022] When the back plate is matched and placed into the limiting space to form a three-phase constraint, a second gap is formed between the back plate and the wall. A plurality of second horizontal bars extending horizontally along the first direction are vertically arranged in the second gap. At least one hook is detachably connected to the second horizontal bar. The side of the hook facing the back plate is provided with an adhesive layer, which is used to stick the back plate.
[0023] Furthermore, the second crossbar includes a fourth substrate and a fifth substrate;
[0024] The fourth substrate is detachably connected to the corresponding support column on both sides along the first direction; the top of the fourth substrate is provided with an upwardly inclined fifth substrate facing the back plate.
[0025] The top of the hook member extends along the second direction and is provided with a hook portion, which is matched and suspended on the fifth base plate.
[0026] Furthermore, the bottom of the hook is provided with an abutment plate extending horizontally in the second direction, and the abutment plate and the hook portion are located on the same side;
[0027] The length of the abutment plate along the second direction is equal to the projected length of the fifth substrate relative to the horizontal reference plane in the second direction. The abutment plate abuts against the fourth substrate, so that the hook is vertically positioned toward the side wall of the back plate.
[0028] Furthermore, the support column has multiple snap-fit holes along the axial direction on the front side facing away from the wall;
[0029] The storage component is provided with a snap-fit element corresponding to the snap-fit hole, and the snap-fit element matches and snaps into the corresponding snap-fit hole.
[0030] Compared with the prior art, the present invention has at least the following beneficial effects:
[0031] When the wall-mounted storage system needs to be disassembled, simply remove the storage component from the outermost support column, then remove the outermost support column from the wall, then push the back panel directly out of the limiting space, and then disassemble the limiting component, support component and another support column in sequence, thereby improving the disassembly efficiency of the wall-mounted storage system. Attached Figure Description
[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects and not to describe a particular order.
[0033] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0034] Figure 1 This is a partially exploded schematic diagram of the first wall-mounted storage system proposed in this utility model.
[0035] Figure 2 This is a schematic diagram of the first type of connection between the support column and the support member proposed in this utility model.
[0036] Figure 3 This is a schematic diagram showing the connection between the support column and the limiting member proposed in this utility model;
[0037] Figure 4 This is a partial sectional view of the first wall-mounted storage system proposed in this utility model;
[0038] Figure 5 This is a partially exploded schematic diagram of the second wall-mounted storage system proposed in this utility model.
[0039] Figure 6 for Figure 5 An enlarged schematic diagram of reference numeral A in the attached figure;
[0040] Figure 7 for Figure 5 An enlarged view of reference numeral B in the attached diagram;
[0041] Figure 8 This is a cross-sectional view of the connection between the second crossbar and the hook component proposed in this utility model;
[0042] Figure 9 This is a partial sectional view of the second wall-mounted storage system proposed in this utility model;
[0043] Figure 10This is a schematic diagram of the second type of connection between the support column and the support member proposed in this utility model.
[0044] Figure label:
[0045] 10. Support column; 101. Mounting slot; 102. First snap-fit slot; 103. Second snap-fit slot; 104. Snap-fit hole; 105. Cover plate; 106. Hanging hole;
[0046] 20. Storage components; 201. Snap-fit components;
[0047] 30. Support component; 301. First base plate; 302. First extension plate; 303. Second extension plate; 304. First limiting plate; 305. First accommodating space; 306. Suspension plate; 307. Clearance notch;
[0048] 40. Limiting component; 401. Second substrate; 402. Third substrate; 403. Snap-fit plate; 404. Second limiting plate; 405. Second accommodating space;
[0049] 50. Limiting space;
[0050] 60. Back panel; 601. First gap; 602. Second gap;
[0051] 70. First horizontal bar;
[0052] 80. Second crossbar; 801. Fourth substrate; 802. Fifth substrate; 803. Hanging lug;
[0053] 90. Hook component; 901. Adhesive layer; 902. Hook part; 903. Abutment plate;
[0054] 100. Walls. Detailed Implementation
[0055] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model. Therefore, a feature pointed out in this specification is used to describe one feature of one embodiment of the present utility model, and does not imply that every embodiment of the present utility model must have the described feature. Furthermore, it should be noted that this specification describes many features. Although certain features may be combined to illustrate possible system designs, these features may also be used in other combinations not explicitly stated. Therefore, unless otherwise stated, the described combinations are not intended to be limiting.
[0056] The principle and structure of this utility model will be described in detail below with reference to the accompanying drawings and embodiments.
[0057] Current wall-mounted storage systems in residential spaces utilize vertical space through the load-bearing structure of the wall, typically connecting storage components such as wardrobes and shelves using wall-mounted structures. Compared to traditional storage systems, they offer advantages such as saving floor space, making them particularly suitable for small apartment renovations.
[0058] However, to improve the flexibility and portability of wall-mounted storage systems, existing manufacturers typically detachably connect the wall-mounting structure to the storage components, then lock the back panel to the wall using expansion bolts or chemical anchors, or weld or bolt the back panel to the wall-mounting structure to ensure the stability of the back panel and the overall system. But this requires disassembling and reassembling the back panel individually, necessitating the removal and installation of each bolt between the back panel and the wall or wall-mounting structure, resulting in low disassembly efficiency.
[0059] Therefore, in some embodiments, such as Figure 1 , Figure 4 and Figure 5 As shown, this utility model proposes a quick-assembly and disassembly wall-mounted storage system, comprising:
[0060] Multiple support columns 10 are installed on the wall 100, and each support column 10 has symmetrically opened mounting grooves 101 extending axially on both sides along the first direction; at least one storage component 20 is detachably connected to the front of the support column 10 facing away from the wall 100 along the axial direction.
[0061] Any two adjacent support columns 10 are detachably connected to the bottom of a support member 30, and any two adjacent support columns 10 are detachably connected to the top of a limiting member 40.
[0062] The mounting groove 101, the support member 30 and the limiting member 40 arranged opposite to each other between any two adjacent support columns 10 form a limiting space 50. The limiting space 50 is used to place the back plate 60 and to constrain the back plate 60 in three directions to prevent the back plate 60 from leaving the limiting space 50.
[0063] It should be noted that the shape of the back panel 60 proposed in this embodiment is preferably cuboid or cube-shaped. Furthermore, the support columns 10 on the same wall 100 are all vertically and parallel to each other, and the back panel 60 installed between two adjacent support columns 10 can be a single piece or a modular design, which is not limited here. Of course, the support columns 10 can not only be fixed to the wall 100, but also to the side wall of other objects (such as cabinets, doors, etc.), which is not limited here. Moreover, the storage component 20 proposed in this embodiment is preferably a shelf, a coat rack, a clothes rod, and a hook assembly, etc., which is not limited here.
[0064] Moreover, the axial direction in this text is equivalent to the Z-axis direction. The first direction in this text is preferably the X-axis direction or the width direction of the back panel 60, and the second direction in this text is preferably the Y-axis direction or the length direction of the back panel 60.
[0065] In this way, the limiting member 40 can be first horizontally arranged along the first direction and fixed on the wall 100, and then one side of the limiting member 40 along the first direction is detachably connected to the top of a support column 10. The support column 10 is fixedly connected to the wall 100 by bolts; then the support member 30 is flush with the bottom of the support column 10, and one side of the support member 30 along the first direction is detachably connected to the bottom of the support column 10, thereby forming a "C" - shaped structure. And the support member 30 is fixedly connected to the wall 100 by bolts; then the back panel 60 is pushed into the "C" - shaped structure from the opening, so that one side of the back panel 60 along the pushing direction is matched and inserted into the corresponding installation groove 101. Then, another support column 10 is detachably connected to the corresponding support member 30 and limiting member 40 to seal the opening of the "C" - shaped structure to form a closed and rectangular - shaped limiting space 50. Then, the storage component 20 is detachably installed on the support column 10 to complete the assembly of the wall - mounted storage system.
[0066] When the wall - mounted storage system needs to be disassembled, first, the storage component 20 on the outermost support column 10 is removed, then the outermost support column 10 is disassembled from the wall 100, then the back panel 60 is pulled out, and then the limiting member 40, the support member 30, and another support column 10 are sequentially disassembled from the wall 100. Then, disassemble in a cycle according to the above steps to completely disassemble the wall - mounted storage system.
[0067] In this way, compared with the prior art of disassembling the bolts between the back panel and the wall or the wall - mounted structure one by one, when disassembling the wall - mounted storage system of the present utility model, only the storage component 20 on the outermost support column 10 needs to be removed, then the outermost support column 10 is disassembled from the wall 100, then the back panel 60 is directly pushed out from the limiting space 50, and then the limiting member 40, the support member 30, and another support column 10 are disassembled in sequence, thereby improving the disassembly efficiency of the wall - mounted storage system.
[0068] Certainly, when the wall - mounted storage system is installed, only the back panel 60 needs to be directly pushed into the limiting space 50, thereby improving the installation efficiency.
[0069] In a further embodiment, as Figure 2As shown, the support member 30 includes a vertically arranged first base plate 301. Both sides of the first base plate 301 extend horizontally outward in the same direction to form a first extension plate 302 and a second extension plate 303. The vertical height of the second extension plate 303 is lower than that of the first extension plate 302, and the horizontal extension length of the first extension plate 302 is less than that of the second extension plate 303.
[0070] Each of the support columns 10 has a first snap-fit groove 102 at its lower part. The first extension plate 302 is fitted into the first snap-fit groove 102 by interference fit, so that the vertical height of the second extension plate 303 is equal to or lower than the bottom of the support column 10. The second extension plate 303 is used to support the bottom of the back plate 60 to form a support.
[0071] When the support member 30 is flush with the bottom of the support column 10, one end of the first extension plate 302 along the first direction is inserted into the first locking groove 102 at the bottom of the support column 10 by interference fit. Then, the first base plate 301 is fixed to the wall 100 with bolts, thereby forming a "U"-shaped structure. Then, the back plate 60 is pushed in from the opening of the "U"-shaped structure so that the back plate 60 extends into the corresponding mounting groove 101 along the pushing direction. Then, the first locking groove 102 of the other support column 10 and the first extension plate 302 along the first direction are connected. One end is fitted with an interference fit, and then another support column 10 is pushed horizontally so that the mounting groove 101 of the other support column 10 matches and accommodates the other side of the back plate 60 along the first direction, so as to seal the opening of the "U"-shaped structure to form a limiting space 50. Then, the other support column 10 is fixed to the wall 100 with bolts. At this time, the bottom of the back plate 60 will abut against the second extension plate 303, thereby forming a support and improving the stability of the back plate 60 in the wall-mounted storage system. Finally, the storage component 20 is detachably installed on the support column 10 to complete the assembly.
[0072] In order to ensure that the second extension plate 303 and the outer side of the support column 10 away from the wall 100 are on the same plane, the second extension plate 303 is provided with a clearance notch 307 corresponding to the support column 10. The clearance notch 307 is matched to accommodate the support column 10 and is used to avoid physical collision between the support column 10 and the second extension plate 303.
[0073] To further ensure the stability of the back plate 60 on the support member 30, such as Figure 2 As shown, a first limiting plate 304 is vertically provided on the side of the second extension plate 303 away from the first substrate 301, and the extension direction of the first limiting plate 304 is the same as the extension direction of the first substrate 301.
[0074] The first substrate 301, the first extension plate 302, the second extension plate 303 and the first limiting plate 304 form a first accommodating space 305, so that the bottom of the back plate 60 is completely accommodated in the first accommodating space 305, thereby preventing the bottom of the back plate 60 from leaving the first accommodating space 305.
[0075] In a further embodiment, such as Figure 3 As shown, the limiting member 40 includes a right-angle structure formed by the vertical connection of the second substrate 401 and the third substrate 402;
[0076] The vertically arranged second substrate 401 has a snap-fit plate 403 that is inclined toward the third substrate 402 on the side away from the third substrate 402;
[0077] Each of the support columns 10 has a second snap-fit groove 103 on its upper part. The snap-fit plate 403 is fitted into the second snap-fit groove 103 by interference fit, so that the top of the support column 10 is accommodated on the third substrate 402.
[0078] In this way, the second substrate 401 is first horizontally set and fixed on the wall 100 along the first direction so that the entire limiting member 40 is horizontally set along the first direction; then the second snap-fit groove 103 of a support column 10 is fitted with one end of the snap-fit plate 403 along the first direction by interference fit so that the third substrate 402 is located above the top of the support column 10; then the support column 10 is vertically fixed on the wall 100 with bolts; then the installation of the support member 30, the back plate 60, the other support column 10 and the storage component 20 are completed in sequence.
[0079] To further ensure the stability of the back plate 60 on the limiting member 40, such as Figure 3 As shown, a second limiting plate 404 is vertically provided on the side of the third substrate 402 away from the second substrate 401, and the extending direction of the second limiting plate 404 is the same as the extending direction of the second substrate 401.
[0080] The second substrate 401, the third substrate 402 and the second limiting plate 404 form a second accommodating space 405, such that the top of the support column 10 is completely accommodated within the second accommodating space 405.
[0081] In this way, the mounting slots 101, the first accommodating space 305 and the second accommodating space 405 arranged opposite to each other between any two adjacent support columns 10 will enclose and form a limiting space 50. The limiting space 50 is used to place the back panel 60 and to constrain the back panel 60 in three directions to prevent the back panel 60 from leaving the limiting space 50, thereby improving the stability of the entire wall-mounted storage system.
[0082] In one embodiment, such as Figure 4 As shown, the mounting groove 101 is an inwardly inclined slotted structure;
[0083] When the back plate 60 is matched and placed into the limiting space 50 to form a three-phase constraint, a first gap 601 is formed between the back plate 60 and the wall 100. At least one first crossbar 70 extending horizontally along a first direction is vertically provided in the first gap 601. The first crossbar 70 completely fills the space of the first gap 601 extending along a second direction to support the back plate 60.
[0084] It should be noted that the first horizontal bar 70 is fixed to the wall 100 by pins or bolts.
[0085] In this way, the inwardly inclined mounting groove 101 can limit and fix the corresponding side of the back plate 60, thereby preventing the back plate 60 from falling out of the mounting groove 101.
[0086] When the back panel 60 is fully placed within the limiting space 50, a void (equivalent to the first gap 601) will form between the back panel 60 and the wall 100. The width of the first crossbar 70 along the first direction completely fills the space extending from the first gap 601 along the second direction, thereby supporting the back panel 60 and preventing deformation of the back panel 60 caused by pressing it from the front. Furthermore, the first crossbar 70 can further strengthen the load-bearing capacity of the entire wall-mounted storage system and improve its stability.
[0087] In other embodiments, such as Figures 8-9 As shown, the mounting groove 101 is a slotted structure with a right-angled cross-section;
[0088] When the back plate 60 is matched and placed into the limiting space 50 to form a three-phase constraint, a second gap 602 is formed between the back plate 60 and the wall 100. A plurality of second crossbars 80 extending horizontally along the first direction are vertically arranged in the second gap 602. At least one hook 90 is detachably connected to the second crossbar 80. The side of the hook 90 facing the back plate 60 is provided with an adhesive layer 901, which is used to stick the back plate 60.
[0089] First, the second substrate 401 is horizontally arranged and fixed on the wall 100 along the first direction, so that the entire limiting member 40 is horizontally arranged along the first direction; then, the second clamping groove 103 of a support column 10 and one end of the clamping plate 403 along the first direction are fitted by interference fit, so that the third substrate 402 is located above the top of the support column 10, and then the support column 10 is vertically fixed on the wall 100 with bolts; one end of the first extension plate 302 along the first direction is fitted in the first clamping groove 102 at the bottom of the support column 10 by interference fit, and then the first substrate 301 is fixed on the wall 100 with bolts, thus forming a "C" - shaped structure; then, one end of multiple second cross - bars 80 along the first direction is detachably connected to the corresponding support column 10, and the second cross - bars 80 are fixed on the wall 100; then, another support column 10 is respectively detachably connected to the other end of the clamping plate 403 along the first direction, the other end of the first extension plate 302 along the first direction, and the other end of the second cross - bar 80 along the first direction to seal the opening of the "C" - shaped structure to form a limiting space 50, and then another support column 10 is fixed on the wall 100 with bolts; then, two hook members 90 are hung on each second cross - bar 80; then, the back plate 60 is first inclined and placed into the first accommodating space 305, then placed face - up into the limiting space 50, and then the back plate 60 is pressed face - down, so that the back of the back plate 60 is adhered to the adhesive layer 901, thereby preventing the back plate 60 from detaching from the mounting groove 101.
[0090] In this way, when it is necessary to disassemble the wall - mounted storage and organization system, it is necessary to first disassemble the outermost support column 10 from the wall 100, then the hook members 90 on the back of the back plate 60 are pushed out of the limiting space 50 along the second cross - bar 80, and then the limiting member 40, the support member 30, the second cross - bar 80, and another support column 10 are disassembled in sequence, thereby improving the disassembly efficiency of the wall - mounted storage and organization system.
[0091] Certainly, the second cross - bar 80 can further reinforce the load - bearing of the entire wall - mounted storage and organization system and improve the stability of the wall - mounted storage and organization system.
[0092] Moreover, both sides of the second cross - bar 80 along the first direction can be connected to the corresponding support column 10, or neither side of the second cross - bar 80 along the first direction abuts against the corresponding support column 10, which is not limited herein.
[0093] Furthermore, as Figure 8 shown, the second cross - bar 80 includes a fourth substrate 801 and a fifth substrate 802;
[0094] Both sides of the fourth substrate 801 along the first direction are detachably connected to the corresponding support column 10; the top of the fourth substrate 801 is provided with an upward - inclined fifth substrate 802 facing the back plate 60; <><000>[
[0095] The top of the hook member 90 extends along the second direction and is provided with a hook portion 902, which is matched and suspended on the fifth substrate 802.
[0096] It should be noted that the cross-section of the hook part 902 is inverted U-shaped.
[0097] In this way, the hook part 902 of the hook member 90 can be suspended on the second crossbar 80 simply by suspending the hook part 902 on the fifth substrate 802. At this time, the hook member 90 can slide along the first direction on the corresponding second crossbar 80 through the hook part 902. The side of the hook member 90 facing away from the fourth substrate 801 is provided with an adhesive layer 901. Then, the corresponding back plate 60 is matched and placed into the limiting space 50. Then, the back plate 60 is pressed towards the wall 100 (equivalent to the front, the same throughout) so that the back plate 60 is glued to the adhesive layer 901 of the hook member 90.
[0098] In other embodiments, such as Figure 7 As shown, this embodiment proposes a detachable connection structure between the second crossbar 80 and the support column 10:
[0099] The fourth substrate 801 is provided with two hanging ears 803 on both sides along the first direction. The two hanging ears 803 on each side are arranged vertically. Then, the support column 10 is provided with hanging holes 106 on both sides along the first direction to match the hanging ears 803. In this way, the fourth substrate 801 is matched and inserted into the corresponding hanging holes 106 through the hanging ears 803 to complete the connection between the second crossbar 80 and the support column 10.
[0100] In other embodiments, such as Figure 10 As shown, when the mounting groove 101 is a slotted structure with a right-angled cross-section, there is another connection structure between the support member 30 and the support column 10:
[0101] The support member 30 abuts against the side wall of the corresponding support column 10 on both sides along the first direction;
[0102] The support member 30 includes a vertically arranged first base plate 301, which is fixed to the wall 100. The bottom of the first base plate 301 extends outward along the second direction and away from the wall 100 to form a second extension plate 303. The top of the first base plate 301 is inclined upward along the second direction and away from the wall 100 to form a hanging plate 306, which is used to hang the hook member 90. A first limiting plate 304 is vertically arranged on the side of the second extension plate 303 away from the first base plate 301. The extension direction of the first limiting plate 304 is the same as the extension direction of the first base plate 301.
[0103] The first substrate 301, the second extension plate 303, the suspension plate 306 and the first limiting plate 304 form a first accommodating space 305, so that the bottom of the back plate 60 is completely accommodated in the first accommodating space 305, thereby preventing the bottom of the back plate 60 from leaving the first accommodating space 305.
[0104] In a further embodiment, to ensure a stable bond between the hook 90 and the back plate 60, such as... Figure 8 As shown, the bottom of the hook 90 is provided with an abutment plate 903 extending horizontally in the second direction, and the abutment plate 903 and the hook portion 902 are located on the same side.
[0105] The length of the abutment plate 903 along the second direction is equal to the projected length of the fifth substrate 802 relative to the horizontal reference plane in the second direction. The abutment plate 903 abuts against the fourth substrate 801, so that the hook 90 is vertically arranged toward the side wall of the back plate 60.
[0106] It should be noted that when the hook 90 is suspended on the second crossbar 80, the length of the second crossbar 80 and the hook 90 in the second direction completely fills the space of the second gap 602 extending in the second direction, thereby supporting the back panel 60 and preventing deformation of the back panel 60 caused by pressing it from the front. Furthermore, the second crossbar 80 further strengthens the load-bearing capacity of the entire wall-mounted storage system, improving its stability.
[0107] Furthermore, the side wall of the hook 90 facing the back plate 60 is provided with an adhesive layer 901. The adhesive layer 901 is set vertically, which means that the adhesive layer 901 is set parallel to the back of the back plate 60. This ensures that the adhesive of the adhesive layer 901 fully fills the back of the back plate 60, so that the adhesive layer 901 and the back plate 60 are more tightly bonded. During long-term use, it is not easy to detach due to moisture expansion and contraction or external force, so that the hook 90 is firmly bonded to the back of the back plate 60.
[0108] When a new back panel 60 needs to be replaced, a new hook part 90 must also be replaced.
[0109] Of course, in other embodiments (not shown in the figure), a first magnet may be provided on the side wall of the hook 90 facing the back plate 60, and an iron sheet or a second magnet attracted to it may be provided on the back of the back plate 60 corresponding to the first magnet, so as to complete the stable connection between the back plate 60 and the hook 90; or a buckle may be provided on the side wall of the hook 90 facing the back plate 60, and a slot may be provided on the back of the back plate 60 corresponding to the buckle, so as to complete the stable connection between the back plate 60 and the hook 90 by matching and engaging the buckle and the slot, which is not limited here.
[0110] In some embodiments, such as Figure 6As shown, the support column 10 has a plurality of snap-fit holes 104 along the axial direction on the front side facing away from the wall 100.
[0111] The storage component 20 is provided with a snap-fit member 201 corresponding to the snap-fit hole 104, and the snap-fit member 201 is matched and snapped into the corresponding snap-fit hole 104.
[0112] It should be noted that the support column 10 has a hollow structure, and even after the snap-fit hole 104 is fitted with the snap-fit piece 201, there is still a considerable amount of space. This space allows the wire connector to extend and connect to the light strip or other electrical components mounted on the support column 10 or the storage component 20, enabling the wall-mounted storage system to emit light and meet the user's lighting needs. Furthermore, the hollow structure of the support column 10 allows for a lightweight design of the wall-mounted storage system and facilitates wiring.
[0113] Furthermore, the snap-fit hole 104 where the storage component 20 is not snapped in can be covered by the cover plate 105 to improve the aesthetics of the support column 10 and the entire wall-mounted storage system.
[0114] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.
Claims
1. A wall-mounted storage system, characterized in that, include: Multiple support columns (10) are set on the wall (100), and each of the support columns (10) has symmetrically opened mounting grooves (101) extending axially on both sides along the first direction; at least one storage component (20) is detachably connected to the front of the support column (10) facing away from the wall (100) along the axial direction. Any two adjacent support columns (10) are detachably connected to a support member (30) at their bottoms, and any two adjacent support columns (10) are detachably connected to a limiting member (40) at their tops. The mounting groove (101) between any two adjacent support columns (10), the support member (30) and the limiting member (40) are arranged to form a limiting space (50), which is used to place the back plate (60) and to constrain the back plate (60) in three directions.
2. The wall-mounted storage system according to claim 1, characterized in that, The support member (30) includes a vertically arranged first base plate (301), and the first base plate (301) extends horizontally outward in the same direction on both sides of the vertical direction to form a first extension plate (302) and a second extension plate (303). The vertical height of the second extension plate (303) is lower than that of the first extension plate (302), and the horizontal extension length of the first extension plate (302) is less than that of the second extension plate (303). Each of the support columns (10) has a first snap-fit groove (102) at its lower part. The first extension plate (302) is fitted into the first snap-fit groove (102) by interference fit, so that the vertical height of the second extension plate (303) is equal to or lower than the bottom of the support column (10). The second extension plate (303) is used to support the bottom of the back plate (60) to form a support.
3. The wall-mounted storage system according to claim 2, characterized in that, The second extension plate (303) has a first limiting plate (304) vertically provided on the side away from the first substrate (301), and the extension direction of the first limiting plate (304) is the same as the extension direction of the first substrate (301). The first substrate (301), the first extension plate (302), the second extension plate (303) and the first limiting plate (304) form a first accommodating space (305) such that the bottom of the back plate (60) is completely accommodated within the first accommodating space (305).
4. The wall-mounted storage system according to claim 1 or 2, characterized in that, The limiting member (40) includes a right-angle structure formed by the vertical connection of the second substrate (401) and the third substrate (402); The vertically arranged second substrate (401) has a snap-fit plate (403) that is inclined toward the third substrate (402) on the side away from the third substrate (402); Each of the support columns (10) is provided with a second snap-fit groove (103) at its upper part. The snap-fit plate (403) is fitted into the second snap-fit groove (103) by interference fit, so that the top of the support column (10) is accommodated on the third substrate (402).
5. The wall-mounted storage system according to claim 4, characterized in that, The third substrate (402) has a second limiting plate (404) vertically provided on the side away from the second substrate (401), and the extension direction of the second limiting plate (404) is the same as the extension direction of the second substrate (401). The second substrate (401), the third substrate (402), and the second limiting plate (404) form a second accommodating space (405), such that the top of the support column (10) is completely accommodated within the second accommodating space (405).
6. The wall-mounted storage system according to claim 1, characterized in that, The mounting groove (101) is an inwardly inclined slotted structure; When the back plate (60) is matched and placed into the limiting space (50) to form a three-phase constraint, a first gap (601) is formed between the back plate (60) and the wall (100). At least one first crossbar (70) extending horizontally along a first direction is vertically provided in the first gap (601). The first crossbar (70) completely fills the space of the first gap (601) extending along a second direction to support the back plate (60).
7. The wall-mounted storage system according to claim 1, characterized in that, The mounting groove (101) is a slotted structure with a right-angled cross-section; When the back plate (60) is matched and placed into the limiting space (50) to form a three-phase constraint, a second gap (602) is formed between the back plate (60) and the wall (100). A plurality of second crossbars (80) extending horizontally along the first direction are vertically arranged in the second gap (602). At least one hook (90) is detachably connected to the second crossbar (80). The hook (90) has an adhesive layer (901) on the side facing the back plate (60). The adhesive layer (901) is used to stick the back plate (60).
8. The wall-mounted storage system according to claim 7, characterized in that, The second crossbar (80) includes a fourth substrate (801) and a fifth substrate (802); The fourth substrate (801) is detachably connected to the corresponding support column (10) on both sides along the first direction; the top of the fourth substrate (801) is provided with an upwardly inclined fifth substrate (802) facing the back plate (60). The top of the hook member (90) extends along the second direction and is provided with a hook portion (902), which is matched and suspended on the fifth substrate (802).
9. The wall-mounted storage system according to claim 8, characterized in that, The bottom of the hook (90) is provided with an abutment plate (903) extending horizontally in the second direction, and the abutment plate (903) and the hook part (902) are located on the same side; The length of the abutment plate (903) along the second direction is equal to the projected length of the fifth substrate (802) in the second direction relative to the horizontal reference plane. The abutment plate (903) abuts against the fourth substrate (801), so that the hook (90) is vertically arranged toward the side wall of the back plate (60).
10. The wall-mounted storage system according to claim 1, characterized in that, The support column (10) has multiple snap-fit holes (104) along the axial direction on the front side facing away from the wall (100); The storage component (20) is provided with a snap-fit element (201) corresponding to the snap-fit hole (104), and the snap-fit element (201) is matched and snapped into the corresponding snap-fit hole (104).